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Updated: Sep 30, 2025

Assessment of Child Anthropometry in a Large Epidemiologic Study
Published on: February 2, 2017
Relationship between Birth Weight, Early Growth Rate, and Body Composition in 5- to 7-Year-Old Children
Isabel Gätjens1, Svenja Fedde1, Steffen Christian Ekkehard Schmidt2
1Institute of Human Nutrition and Food Science, Christian-Albrechts University Kiel, Kiel, Germany.
Insights
Children born large for gestational age (LGA) with catch-down growth show increased fat mass, while small for gestational age (SGA) with catch-down growth favor lean mass. Postnatal growth impacts body composition differently based on birth weight and sex.
Area of Science:
- Pediatrics
- Human Physiology
- Growth and Development
Background:
- Intrauterine growth programming influences long-term cardio-metabolic disease risk.
- Individuals born small for gestational age (SGA) or large for gestational age (LGA) face higher health risks.
- Postnatal growth (catch-up or catch-down) can lead to adverse body composition phenotypes, such as a thin-fat phenotype.
Purpose of the Study:
- To investigate the impact of birth weight and postnatal growth on body composition in children.
- To analyze fat-free mass index (FFMI) and fat mass index (FMI) in relation to birth weight and early-life growth.
- To compare body composition between children born SGA, appropriate for gestational age (AGA), and LGA.
Main Methods:
- Utilized Hattori's body composition chart for 3,204 children aged 5-7 years.
- Assessed the influence of birth weight and catch-up/catch-down growth over the first 2 years.
- Compared body composition data against AGA children with similar body mass index (BMI).
Main Results:
- LGA children had higher BMI than AGA children; SGA children did not show a significant difference.
- LGA children, especially girls, exhibited higher FMI and lower FFMI compared to AGA peers with the same BMI.
- Catch-down growth exacerbated these differences, while catch-up growth mitigated them; SGA boys showed higher FFMI and lower FMI.
- Sex differences in lean mass accretion explained observed phenotypes.
Conclusions:
- Compensatory catch-down postnatal growth in LGA individuals may increase fat over lean mass.
- SGA individuals with catch-down growth appear to favor lean mass accretion.
- Sex-specific differences in lean mass accretion during postnatal growth contribute to observed body composition phenotypes.
Background:
Programing of body composition during intrauterine growth may contribute to the higher risk for cardio-metabolic disease in individuals born small or large for gestational age (SGA, LGA). Compensations of intrauterine growth by catch-up or catch-down postnatal growth may lead to adverse consequences like a thin-fat phenotype.
Methods:
The impact of (i) birth weight as well as (ii) the interaction between birth weight and catch-up or catch-down growth during the first 2 years of life on fat-free mass index (FFMI) and fat mass index (FMI) in 3,204 5-7-year-old children were investigated using Hattori's body composition chart. Body composition results were compared to appropriate for gestational age (AGA) birth weight with the same body mass index (BMI).
Results:
In total, 299 children at age 5-7 years were categorized as SGA, 2,583 as AGA, and 322 as LGA. When compared to AGA-children, BMI at 5-7 years of age was higher in LGA-children (15.5 vs. 16.2 kg/m2; p < 0.001) but not different in SGA-children. Compared to AGA with the same BMI, LGA was associated with higher FMI and a lower FFMI in 5-7-year-old girls. This phenotype was also seen for both sexes with catch-down growth during the first 2 years of life whereas catch-up growth prevented the higher FMI and lower FFMI per BMI. By contrast, SGA was associated with a higher FFMI and lower FMI in 5-7-year-old boys compared to AGA boys with the same BMI. This phenotype was also seen with catch-down growth in both genders whereas catch-up growth in girls led to more gain in FMI per BMI.
Conclusion:
LGA with a compensatory catch-down postnatal growth may be a risk factor for the development of disproportionate gain in fat over lean mass whereas SGA with a catch-down postnatal growth seems to favor the subsequent accretion of lean over fat mass. A higher propensity of lean mass accretion during postnatal growth in boys compared to girls explains sex differences in these phenotypes.
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